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2,050 results for “southern Brazil”
Figure 5 in A new species of Phylloptera Serville, 1831 (Orthoptera, Tettigoniidae, Phaneropterinae) from southern Brazil and lectotype designation for Phylloptera picta Brunner von Wattenwyl, 1891
Figure 5. Occurrence map of species of Phylloptera of the picta group. Circle: Phylloptera picta; square: Phylloptera lineapurpurea; stars: Phylloptera jaci sp. nov.
Figure 1 Pheidole abakytan n in Additions to the taxonomy of Pheidole (Hymenoptera: Formicidae) from the southern grasslands of Brazil
Figure 1 Pheidole abakytan n. sp. Major worker, holotype, CASENT0742943: (A) full-face view (B) lateral view (C) hypostomal margin (D) dorsal view. Minor worker, paratype, CASENT0742944:(E) full-face view (F) profile view (G) dorsal view.Scale bar 0.5 mm. 3D model and rotation video (Supp 1 and 2 [online only]).
Figure 4 in A new species of Phylloptera Serville, 1831 (Orthoptera, Tettigoniidae, Phaneropterinae) from southern Brazil and lectotype designation for Phylloptera picta Brunner von Wattenwyl, 1891
Figure 4 Tegmina of Phylloptera picta (A) and Phylloptera jaci sp. nov. (B); green, radial vein (R); blue, median veins (MA, anterior and MP, posterior); red: cubital veins (CuA, anterior and CuP, posterior); st: spot (the stridulatory file of P. picta is not depicted)
Figure 14 in Additions to the taxonomy of Pheidole (Hymenoptera: Formicidae) from the southern grasslands of Brazil
Figure 14 Map of South Brazil showing the localities for the diligens group species records in grassland areas.
Fig. 5 in Houseflies speaking for the conservation of natural areas: a broad sampling of Muscidae (Diptera) on coastal plains of the Pampa biome, Southern Brazil
Fig. 5. Graphical representation of proportional richness (a) and abundance (b) by the guild in the five regions of Coastal Plain of Pampa Biome (Rio Grande do Sul, Brazil). SS, saprophagous larvae and saprophagic/hematophagous adults; SPS, facultative predators/parasitic larvae and saprophagous adults; OS, predatory larvae and saprophagous adults; PP, predatory larvae and adults.
Figs. 3–4 in Stichelia pelotensis (Lepidoptera, Riodinidae): conservation, notes, and rediscovery of an endangered butterfly from southern Brazil
Figs. 3–4. (3) Male of Stichelia pelotensis perching in an individual of Desmodium incanum in the study area; (4) female of Stichelia pelotensis feeding in the inflorescence of an individual of Eryngium elegans in the study area.
Figs. 1–2 in Stichelia pelotensis (Lepidoptera, Riodinidae): conservation, notes, and rediscovery of an endangered butterfly from southern Brazil
Figs. 1–2. General view of the habitat used by the individuals of Stichelia pelotensis, a stretched area of arboreal vegetation along Embrapa watercourses surrounded by grasslands (1); detailed site in which most individuals of Stichelia pelotensis were observed, including a marshy environment with small trees and shrubs (2).
Fig. 11 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 11. Female terminalia. (A) Oxysarcodexia paulistanensis (sternites 1–4 omitted); (B) Oxysarcodexia riograndensis (sternites 1–4 omitted); (C) Peckia (Pattonella) resona (sternites 1–4 omitted); (D) Peckia (Euboettcheria) florencioi (sternites 1–4 omitted); (E) Peckia (Sarcodexia) lambens (sternites 1–4 omitted); (F) Microcerella halli (sternites 1–4 omitted); (G) Peckia (Pattonella) intermutans (tergite 6 and sternite 1 omitted); (H) Peckia (Euboettcheria) australis; (I) Sarcophaga (Bercaea) africa (sternite 1 omitted). Scales: 1 mm.
Fig. 8 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 8. External female morphology of Peckia (Sarcodexia) lambens. (A) Habitus, lateral view; scale: 2 mm; (B) abdomen, dorsal view; scale: 1 mm; (C) abdominal terminal segments, ventral view; scale: 0.5 mm; (D) abdomen, ventral view; scale: 1 mm.
Fig. 3 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 3. External female morphology of Oxysarcodexia riograndensis. (A) Habitus, lateral view; scale: 2 mm; (B) abdomen, dorsal view; scale: 1 mm; (C) abdominal terminal segments, ventral view; scale: 0.5 mm; (D) abdomen, ventral view; scale: 1 mm.
Fig. 6 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 6. External female morphology of Peckia (Euboettcheria) australis. (A) Habitus, lateral view; scales: 2 mm; (B) abdomen, dorsal view; scale: 2 mm; (C) abdominal terminal segments, ventral view; scale: 0.5 mm; (D) abdomen, ventral view; scale: 1 mm.
Figs. 1–2 in A new species of Zethus (Zethusculus) de Saussure (Hymenoptera, Vespidae, Eumeninae) from southern Brazil
Figs. 1–2. Zethus (Zethusculus) paschoali sp. n., holotype female – scale: 1 mm. 1. Head, frontal view. 2. Habitus.
Fig. 1 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 1. General morphology of female terminalia. (A) Oxysarcodexia paulistanensis (pink = tergite 8; green = cercus; yellow = hypoproct; blue = vaginal plate; dark red = spiracle 6; dark green = spiracle 7. (B) Peckia (Euboettcheria) florencioi (orange = epiproct). (C) Microcerella halli (light yellow = sternite 5; light green = sternite 6; light pink = sternites 7 + 8).
Fig. 2 in Comparative morphology and identification key for females of nine Sarcophagidae species (Diptera) with forensic importance in Southern Brazil
Fig. 2. External female morphology of Oxysarcodexia paulistanensis. (A) Habitus, lateral view; scale: 2 mm; (B) abdomen, dorsal view; scale: 1 mm; (C) abdominal terminal segments, ventral view; scale: 0.5 mm; (D) abdomen, ventral view; scale: 1 mm.
Figs. 3–11 in A new species of Zethus (Zethusculus) de Saussure (Hymenoptera, Vespidae, Eumeninae) from southern Brazil
Figs. 3–11. Diagnostic features of Zethus paschoali compared to related taxa. 3–6. Second metasomal tergum, dorsal view – scale: 1 mm. 3. Z. paschoali. 4. Z. shrottkyanus 5. Z. romandinus. 6. Z. fraternus. 7–8. Pronotal carina, oblique dorsal view – scale: 0.5 mm. 7. Z. paschoali. 8. Z. romandinus. 9. Z. arietis. 10–11. Propodeum, posterior view – scale: 0.25 mm. 10. Z. paschoali, median carina pointed by arrow. 11. Z. romandinus.
Fig. 1 in Soil seed bank pattern of Adesmia tristis Vogel from Campos de Cima da Serra ecosystem in southern Brazil
Fig. 1. Negative linear regression relating the germination of non-scarified Adesmia tristis seeds after eight months with addition of limestone to five different types of soils to corrected to pH = 6.
Figure 1 in Comparison of soil invertebrate communities in organic and conventional production systems in Southern Brazil
Figure 1. Location of sampling sites in Quitandinha county, part of the greater Curitiba metropolitan area, State of Paraná, Brazil.
Figure 2 in Comparison of soil invertebrate communities in organic and conventional production systems in Southern Brazil
Figure 2. Relative abundance of the most representative soil invertebrate groups (> 2 %) and the 'others' group of soil macrofauna (A) and soil mesofauna (B) in four land-use systems (NF = Native forest, OH = organic horticulture, RT = reduced tillage, and CH = conventional horticulture) in Quitandinha, Brazil.
Fig. 1 in What have we learned from the dead? A compilation of three years of cooperation between entomologists and crime scene investigators in Southern Brazil
Fig. 1. Location of Paraná State (Southern Brazil) and municipalities where the cases occurred in detail. (1) Ponta Grossa, (2) Campo Magro, (3) Colombo, (4) Campina Grande do Sul, (5) Quatro Barras, (6) Curitiba, (7) São José dos Pinhais, (8) Fazenda Rio Grande, (9) Araucária, (10) Campo do Tenente, (11) Lapa.
Fig. 1 in Biotic factors are more important than abiotic factors in regulating the abundance of Plutella xylostella L., in Southern Brazil
Fig. 1. Climatic variables recorded during field surveys in the county of Colombo, Paraná State, Southern Brazil. Climate data shown are: rainfall (column), mean temperature (solid line), minimum temperature (dashed line) and maximum temperature (dotted line).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.